DocumentCode :
3568815
Title :
Blind identification and equalization for multiple-input/multiple-output channels
Author :
Li, Ye ; Liu, K. J Ray
Author_Institution :
AT&T Res., Holmdel, NJ, USA
Volume :
3
fYear :
1996
Firstpage :
1789
Abstract :
To separate and recover multiple signals in data communications, antenna arrays and acoustic sensor arrays, the impulse responses of multiple-input/multiple-output (MIMO) channels have to be identified explicitly or implicitly. This paper deals with the blind identification of MIMO FIR channels based on second-order statistics of the channel outputs and its application in blind channel equalization and signal-separation. We first investigate the identifiability of MIMO FIR channels, and obtain a necessary and sufficient condition for MIMO FIR channels to be identifiable up to a unitary ambiguity matrix using second-order statistics. Next, we extend the identification algorithms for single-input/multiple-output (SIMO) FIR channels, such as the algebraic algorithm and the subspace algorithm to the identification of MIMO FIR channels. Since the ambiguity matrix cannot be estimated using second-order statistics, we then present a fourth-order cumulant based ambiguity matrix estimation algorithm. Finally, we demonstrate effectiveness of the algorithms in this paper by computer simulations
Keywords :
FIR filters; MIMO systems; equalisers; estimation theory; higher order statistics; identification; matrix algebra; signal reconstruction; telecommunication channels; transient response; MIMO FIR channels; acoustic sensor arrays; algebraic algorithm; ambiguity matrix; antenna arrays; blind identification; channel outputs; data communications; equalization; fourth-order cumulant based ambiguity matrix estimation algorithm; impulse response; multiple-input/multiple-output channels; second-order statistics; signal-separation; single-input/multiple-output; subspace algorithm; unitary ambiguity matrix; Acoustic arrays; Acoustic sensors; Antenna arrays; Blind equalizers; Data communication; Finite impulse response filter; MIMO; Sensor arrays; Signal processing; Statistics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 1996. GLOBECOM '96. 'Communications: The Key to Global Prosperity
Print_ISBN :
0-7803-3336-5
Type :
conf
DOI :
10.1109/GLOCOM.1996.591946
Filename :
591946
Link To Document :
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